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Self-healing, stretchable, and highly adhesive hydrogels for epidermal patch electrodes

Xin Zhou, Ashna Rajeev, Arunprabaharan Subramanian, Yang Li, Nicolo Rossetti, Giovanniantonio Natale, Gregory A. Lodygensky et Fabio Cicoira

Article de revue (2022)

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Abstract

Flexible, self-healing and adhesive conductive materials with Young's modulus matching biological tissues are highly desired for applications in bioelectronics. Here, we report self-healing, stretchable, highly adhesive and conductive hydrogels obtained by mixing polyvinyl alcohol, sodium tetraborate and a screen printing paste containing the conducting polymer Poly (3,4-ethylenedioxythiophene) doped with polystyrene sulfonate (PEDOT:PSS) and diol additives. The as prepared hydrogels exhibited modelling ability, high adhesion on pig skin (1.96 N/cm2), high plastic stretchability (>10000%), a moderate conductivity, a low compressive modulus (0.3−3.7 KPa), a good strain sensitivity (gauge factor = 3.88 at 500% strain), and remarkable self-healing properties. Epidermal patch electrodes prepared using one of our hydrogels demonstrated high-quality recording of electrocardiography (ECG) and electromyography (EMG) signal. Because of their straightforward fabrication, outstanding mechanical properties and possibility to combine the electrode components in a single material, hydrogels based on PVA, borax and PEDOT:PSS are highly promising for applications in bioelectronics and wearable electronics.

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Matériel d'accompagnement:
Département: Département de génie chimique
Organismes subventionnaires: NSERC
URL de PolyPublie: https://publications.polymtl.ca/50574/
Titre de la revue: Acta Biomaterialia (vol. 139)
Maison d'édition: Elsevier
DOI: 10.1016/j.actbio.2021.07.069
URL officielle: https://doi.org/10.1016/j.actbio.2021.07.069
Date du dépôt: 18 avr. 2023 14:59
Dernière modification: 19 mars 2026 14:52
Citer en APA 7: Zhou, X., Rajeev, A., Subramanian, A., Li, Y., Rossetti, N., Natale, G., Lodygensky, G. A., & Cicoira, F. (2022). Self-healing, stretchable, and highly adhesive hydrogels for epidermal patch electrodes. Acta Biomaterialia, 139, 296-306. https://doi.org/10.1016/j.actbio.2021.07.069

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